BACKGROUND OF THE INVENTION
[0001] This invention generally pertains to disk brakes and more particularly to a unique
configuration for a torque tube, drive key, and backplate assembly which may be applied
to various type disk brake applications. More specifically, the invention provides
a torque tube having separable and replaceable keys and a separable and replaceable
backplate. While the invention will be described herein with regard to aircraft wheel
and brake configurations, it may as well be applied to other type vehicle disk brake
configurations and various industrial brake applications. The invention therefore,
is not considered limited in scope by the specific application illustrated in the
drawings.
[0002] By way of example, FIGURE 1 of the drawings is illustrative of a conventional prior
art aircraft wheel and brake assembly generally indicated by reference numeral 10.
Portions which are pertinent to the invention are indicated in solid lines while less
pertinent portions arc indicated via ghost lines for the purpose of illustrating the
environment thereof. Very generally, a wheel and brake assembly 10 may include a two-part
wheel 12 comprised of an inboard wheel half 12a and an outboard wheel half 12b which
are fastened together by a plurality of wheel bolts 12c and mounted for rotation about
an axle 14 via a plurality of wheel bearings diagramatically indicated at 16. A multi-disk
brake assembly generally indicated by reference numeral 20 may be mounted at the inboard
side of the wheel 12 within the wheel cavity formed by the inboard wheel half 12a.
The brake assembly 20 includes a torque tube 30 mounted via a plurality of bolts 32
to a brake housing 34 having brake actuating means 36 for applying a braking pressure
to a pressure plate 38. The pressure plate 38 transmits the braking pressure to a
brake stack generally indicated by reference numeral 40 to effect braking of the wheel
12. Wheel braking action is accomplished by the brake stack 40 comprised of alternating
brake disks 42 and friction disks 44 either one of which may be keyed for rotation
with the wheel 12 or alternatively keyed to be relatively stationary with the torque
tube 30. As illustrated in the drawing, the outer periphery of the rotating members
of the brake stack 40 are keyed to the inner periphery of the inboard wheel half 12a
while the inner periphery of the stationary members of the stack 40 are keyed to the
outer periphery of the torque tube 30. Thus, the torque tube 30 plays a primary role
in the braking action and the design and construction of it is critical to the effectiveness
of the brake system.
[0003] Conventionally, torque tubes of the prior art as illustrated in FIGURE 1 may comprise
a one-piece forged or cast metal member 30 that is machined to close tolerances to
provide the keyed interconnections for the stationary members of the brake stack 40.
Conventional torque tubes 30 of the prior art may also be characterized by an integral
backplate 30b that extends radially at an approximate angle of 90 degrees with respect
to the cylindrical portion 30a of the tube and which operates to engage the brake
stack 40 when a braking pressure is applied at the opposite end by the actuating means
36 through the pressure plate 38. The prior art torque tube may further be characterized
by a tubular portion 30a that carries the keying elements 30c for engagement with
the stationary members of the brake stack 40 and these keying elements are conventionally
machined into the outer peripheral surface of the torque tube.
[0004] Problems associated with conventionally forged or cast and machined torque tubes
30 involve the backplate 30b and the drive key elements 30c. The backplate 30b may
develop fractures due to the axial force exerted on it and heat buildup during braking
while the keys 30c suffer wear associated with braking action. In this circumstance,
and because the backplate and keys are made as an integral part of the torque tube,
the total torque tube must be replaced to put the brake assembly back into a safe
and reliable operating condition. In this respect, the torque tube 30 is usually the
single most expensive element of a typical brake assembly and therefore replacement
of it is a major maintenance operation and an expensive proposition.
[0005] In view of the above mentioned disadvantages of the presently used torque tube, it
is in one aspect of the assembly that eliminates replacement of the total torque tube
when failure occurs to the backplate and/or drive key portions of the assembly.
[0006] In another aspect of the invention it is an object to provide a torque tube that
is more economical to manufacture and which does not require extensive machining operations
and elaborate inspection techniques to meet rigid aircraft and/or industrial specifications.
[0007] In another aspect of the invention it is an object to provide. a torque tube assembly
that has separable drive keys which may be individually replaced when worn or defective
keys are detected.
[0008] In still another aspect of the invention it is an object to provide a torque tube
assembly having a separable backplate that may be easily replaced when such backplate
suffers fatigue failure and/or other defects.
[0009] In another aspect of the invention it is an object to provide a torque tube that
exhibits a longer service life than experienced with presently used one-piece torque
tubes and wherein the operational integrity may be more easily tested, and which may
be applied to brake assemblies having different diameters and numbers of drive keys.
SUMMARY OF THE INVENTION
[0010] In its broad aspect the invention provides an assem- blyfor multi-disk type brakes
which provides torque takeout, keying interconnections, and disk stack backup and
comprises a cylindrical torque tube having separable drive keys and backplate. The
keys are bolted to the tube about its midsection and the ends thereof are seated in
anti-rotation slots located at the inboard and outboard ends of the tube and the outboard
end of each key has a radial extension that supports a separable backplate mounted
at the outboard end of the tube.
BRIEF DESCRIPTION OF THE DRAWINGS
[0011] Various features and advantages of the invention will be better understood and appreciated
from a consideration of the following detailed description of the preferred embodiment
when taken in conjunction with the accompanying drawings in the several figures in
which like parts bear like reference numerals and in which:
FIGURE 1 is a sectional elevational view of a portion of a conventional prior art
aircraft wheel and brake assembly, the portions that are pertinent to this invention
being shown in solid lines while the non-pertinent portions are shown in ghost lines;
FIGURE 2 is an elevational view, in section, of a portion of a torque tube assembly
in accordance with this invention;
FIGURE 3 is a partial sectional view as may be taken on line 3-3 of FIGURE 2;
FIGURE 4 is an elevational view of the inboard end showing a portion of the torque
tube assembly as may be taken on line 4-4 of FIGURE 2; and
FIGURE 5 is an elevational view of the outboard end showing a portion of the torque
tube assembly as may be taken on line 5-5 of FIGURE 2.
DETAILED DESCRIPTION OF THE INVENTION
[0012] Referring to FIGURES 2 thru 5 of the drawings, a torque tube assembly in accordance
with this invention is generally indicated by reference numeral 100. The assembly
100 may be mounted about an aircraft wheel axle (not shown) having an axis Ax and
oriented with respect to an inboard direction indicated by arrow 102 and an outboard
direction indicated by arrow 104. The assembly 100, generally comprises a torque tube
member 50, a plurality of keys 60 axially aligned about the outer peripheral extent
of the torque tube, and a brake backplate 70 mounted at the outboard end of the torque
tube 50. The elements comprising torque tube 50, keys 60 and backplate 70 are individual
and separable members of the assembly 100 and collectively replace the single torque
tube element 30 illustrated in FIGURE 1 of the drawings.
[0013] The torque tube 50 is an open-ended, wrought metal tube having a barrel portion 50a
that terminates at the outboard end in a machine-formed flange 50b extending radially
at an approximate angle of 90 degrees with respect to the Ax axis. At the inboard
end the tube 50a terminates in a machine-formed restricted bore 50c that is adapted
to mount on an axle assembly (not shown) in a conventional manner. The torque tube
50 is characterized by a plurality of slots 52 in spaced relationship about the inboard
end of the tube and by an equal plurality of slots 54 in spaced relationship about
the outboard end of the tube 50. Each slot 52 at the inboard end is axially aligned
with a slot 54 at the outboard end of the tube. The slots 52,54 are cut or machined
into the torque tube 50 and each pair of slots 52,54 are of a dimension such as to
receive a drive key 60 in spanned relationship between them and in a substantially
locking and anti-rotational arrangement as will be more fully understood and appreciated
hereinafter. As mentioned, the torque tube 50 is a wrought metal tube and in this
respect it may comprise a light gauge stock requiring a minimum amount of machining
to shape the tube to the final desired configuration. It is anticipated, however,
that any high strength metal may be used for the torque tube including for example
steel. and titanium. Additionally, the bore of the torque tube 50 may be machined
to further decrease its weight and in this respect a center rib 50e may be provided
to mount a supporting disc 51 within the bore as a strengthening member. Thus, it
will be appreciated by those persons skilled in the brake arts that the torque tube
50 of this invention is a much more simplified product requiring lower cost manufacturing
techniques than the presently used one-piece torque tubes.
[0014] The torque tube 50 is adapted, by virtue of the slots 52,54, to carry a plurality
of keying elements 60 about the outer peripheral surface of the barrel portion of
the tube 50a. The keys 60 are forged or cast, bar-like elements that may be made of
solid bar stock steel or titanium and may be machined such as at 60c to reduce the
weight thereof along the lengthwise extent of the bar. The inboard end 60a of each
key 60 is characterizec by a protrusion 62 that depends and locks into the inboard
slot 52. The outboard end 60b of each key 60 is characterized by a protrusion 64 that
depends and locks into the outboard slot 54. The slots 52,54 therefore provide an
anti-rotational mounting for each of the keys 60. The keys 60 are further affixed
to the torque tube 50 via bolts 66 that are mounted through holes 56 in the barrel
portion 50a of the torque tube and threaded into matching threaded holes 68 in the
body of the key. When all of the keying elements 60 are mounted and affixed to the
torque tube 50 the assembly is bolted to the stationary brake housing 34 via bolts
69 that are threaded into each key 60 via threaded bores 60e provided in the inboard
end 60a. In this manner torque--t-akeout of the brake assembly is provided by reason
of the slots 52,54, bolts 66, and bolts 69.
[0015] The keys 60 are further characterized at their outboard extent by an extension 60d
that extends radially outwardly with respect to the Ax axis. As clearly illustrated
in FIGURES 2 and 5 of the drawings, the extension 60d is at an angle of approximately
90 degrees and is oriented within the torque tube slot 54 and aligned with the tube
flange 50b. The drive key extensions 60d thus provide support for the backplate 70
by the number of keys mounted on the torque tube.
[0016] The backplate 70 is a circular disk having a bore 70a such that the disk may be mounted
on the assembly comprising the torque tube 50 and keys 60. The backplate 70 has an
overall diameter such as to provide sufficient support to a brake stack ("40" in FIGURE
1) that may be mounted on the assembly. As clearly shown in the drawing, the backplate
70 is supported at the outboard extent by the key extension 60d. The backplate 70
may also be provided with a wear plate face 72 that may be affixed to the backplate
via any conventional fastening means such as for example rivets 74.
[0017] While certain representative embodiments and details have been shown for the purpose
of illustrating the invention, it will be apparent to those skilled in the art that
various changes and modifications may be made therein without departing from the spirit
or scope of the invention.
1. In a brake assembly including a brake housing, an axle, a rotatable member on the
axle, and a multi-disk brake stack of alternating rotating and stationary components
to provide braking of the rotatable member when subjected to a pressure force on the
brake stack, a sub-assembly for stationary mounting with respect to the brake housing
to provide torque takeout, keying interconnections, and disk brake backup for the
brake, the sub-assembly characterized by:
a cylindrically shaped torque tube mounted axially about the axle and having an inboard
end as determined by the brake housing and an outboard end as determined by the rotating
member, said torque tube having a plurality of spaced-apart slots in the tube about
the periphery of each end wherein each slot at the inboard end is axially aligned
with a respective slot in the outboard end; and
a plurality of bar-shaped keys mounted axially on the torque tube in spanned relationship
between one of said inboard and one of said outboard slots and engaged within said
slots to provide keying interconnections for the stationary components of the brake
stack and each said key having a radial extension at the outboard end to provide backup
for the brake stack when said stack is subjected to a braking pressure force.
2. The sub-assembly as set forth in Claim 1 characterized by the torque tube being
affixed to the brake housing via a plurality of bolts, each said bolt mounted in the
brake housing and threadably engaged within the inboard end of a respective key.
3. The sub-assembly as set forth in either of Claims 1 or 2 characterized by each
key being affixed to the torque tube via at least one bolt passing through the tube
and threadably engaged within the body of the key.
4. The sub-assembly as set forth in Claim I further characterized by a backplate disk
mounted on the torque tube at the outboard end thereof and abutting the radial extensions
of the keys to provide a backpressure plate for the brake stack when subjected to
a braking pressure force.
5. The sub-assembly as set forth in Claim 4 characterized by the backplate disk also
being in keying relationship with the keys on the torque tube.
6. The sub-assembly as set forth in Claim 1 characterized by said torque tube having
a radial extension within its bore to provide support to the tube in its mounting
on the axle.
7. The sub-assembly as set forth in Claim 1 characterized by said keys having inboard
and outboard extensions in the body of the key which depend into respective inboard
and outboard slots, to seat into and engage the slots to provide torque takeout in
the application of the brake.
8. The sub-assembly as set forth in Claim 1 characterized by said tube having a diameter
Dl throughout the substantial portion of its length and a smaller diameter D2 at the
inboard end thereof, said inboard end slots being cut into the tube only at the portion
having a diameter D1.
9. The sub-assembly as set forth in Claim 4 characterized by the torque tube having
a radially extending portion at the outboard end and the outboard end slots are cut
through the extension, said radial extension of the tube and radial extensions of
the keys providing a continuous radially extending backup for the backplate.